The use of interfacial layers to stabilize the lithium surface is a popular research direction for improving the morphology of deposited lithium and suppressing lithium dendrite formation. This work considers a different approach to controlling dendrite formation where lithium is plated underneath an interfacial coating. In the present research, a Li-Sn intermetallic was chosen as a model system due to its lithium-rich intermetallic phases and high Li diffusivity. These coatings also exhibit a significantly higher Li exchange current than bare Li thus leading to better charge transfer kinetics. The exchange current is instrumental in determining whether lithium deposition occurs above or below the Li-Sn coating. High-resolution transmission...
Lithium metal electrodes are not widely used in rechargeable batteries as dendritic lithium growth a...
Li metal anode is deemed the most promising candidate anode for high-energy battery systems such as ...
The utilization of lithium (Li) metal is highly desirable, because it is the most attractive anode f...
The use of interfacial layers to stabilize the lithium surface is a popular research direction for i...
Lithium (Li) deposition behavior plays an important role in dendrite formation and the subsequent pe...
International audienceThe properties of hybrid Sn-based artificial solid electrolyte interphase (SEI...
The growth and proliferation of Li dendrites during repeated Li cycling has long been a crucial issu...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
While lithium metal is considered an ideal anode for the next generation of high-energy-density batt...
The lithium- (Li-) metal anode is crucial for developing high-energy-density batteries, while its de...
It is crucial to suppress lithium dendrite formation in lithium metal batteries. Formation of a good...
Li3N is an excellent protective coating material for lithium electrodes with very high lithium-ion c...
The propensity of lithium to form nonplanar, mossy, or dendritic electrodeposits at current densitie...
Lithium rechargeable cells with lithium metal anodes are widely considered to have the highest energ...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
Lithium metal electrodes are not widely used in rechargeable batteries as dendritic lithium growth a...
Li metal anode is deemed the most promising candidate anode for high-energy battery systems such as ...
The utilization of lithium (Li) metal is highly desirable, because it is the most attractive anode f...
The use of interfacial layers to stabilize the lithium surface is a popular research direction for i...
Lithium (Li) deposition behavior plays an important role in dendrite formation and the subsequent pe...
International audienceThe properties of hybrid Sn-based artificial solid electrolyte interphase (SEI...
The growth and proliferation of Li dendrites during repeated Li cycling has long been a crucial issu...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
While lithium metal is considered an ideal anode for the next generation of high-energy-density batt...
The lithium- (Li-) metal anode is crucial for developing high-energy-density batteries, while its de...
It is crucial to suppress lithium dendrite formation in lithium metal batteries. Formation of a good...
Li3N is an excellent protective coating material for lithium electrodes with very high lithium-ion c...
The propensity of lithium to form nonplanar, mossy, or dendritic electrodeposits at current densitie...
Lithium rechargeable cells with lithium metal anodes are widely considered to have the highest energ...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
Lithium metal electrodes are not widely used in rechargeable batteries as dendritic lithium growth a...
Li metal anode is deemed the most promising candidate anode for high-energy battery systems such as ...
The utilization of lithium (Li) metal is highly desirable, because it is the most attractive anode f...